With the increased need for high-rate Li-ion batteries, it has become apparent that new electrode materials with enhanced Li-ion transport should be designed. Interfaces, such as twin boundaries (TBs), offer new opportunities to navigate the ionic transport within nanoscale materials. Here, we demonstrate the effects of TBs on the Li-ion transport properties in single crystalline SnO<sub>2</sub> nanowires. It is shown that the TB-assisted lithiation pathways are remarkably different from the previously reported lithiation behavior in SnO<sub>2</sub> nanowires without TBs. Our in situ transmission electron microscopy study combined with direct atomic-scale imaging of the initial lithiation stage of the TB-SnO<sub>2</sub> nanowires prove that...
The intercalation of lithium into the polymorph of titania, TiO2-B, has been examined using firstpri...
The conversion reaction of lithia can push up the capacity limit of tin oxide-based anodes. However,...
The rapid insertion and extraction of Li ions from a cathode material is imperative for the function...
With the increased need for high-rate Li-ion batteries, it has become apparent that new electrode ma...
With the increased need for high-rate Li-ion batteries, it has become apparent that new electrode ma...
With the increased need for high-rate Li-ion batteries, it has become apparent that new electrode ma...
© 2014 American Chemical Society. With the increased need for high-rate Li-ion batteries, it has bec...
Multiple lithium-ion transport pathways and local phase changes upon lithiation in silver hollandite...
In the present work, taking advantage of aberration-corrected scanning transmission electron microsc...
Safe and efficient operation of lithium ion batteries requires precisely directed flow of lithium io...
Multiple lithium-ion transport pathways and local phase changes upon lithiation in silver hollandite...
Comprehensive understanding of the charge transport mechanism in the intrinsic structure of an elect...
In the past decades, Li ion batteries are widely considered to be the most promising rechargeable ba...
Comprehensive understanding of the charge transport mechanism in the intrinsic structure of an elect...
Comprehensive understanding of the charge transport mechanism in the intrinsic structure of an elect...
The intercalation of lithium into the polymorph of titania, TiO2-B, has been examined using firstpri...
The conversion reaction of lithia can push up the capacity limit of tin oxide-based anodes. However,...
The rapid insertion and extraction of Li ions from a cathode material is imperative for the function...
With the increased need for high-rate Li-ion batteries, it has become apparent that new electrode ma...
With the increased need for high-rate Li-ion batteries, it has become apparent that new electrode ma...
With the increased need for high-rate Li-ion batteries, it has become apparent that new electrode ma...
© 2014 American Chemical Society. With the increased need for high-rate Li-ion batteries, it has bec...
Multiple lithium-ion transport pathways and local phase changes upon lithiation in silver hollandite...
In the present work, taking advantage of aberration-corrected scanning transmission electron microsc...
Safe and efficient operation of lithium ion batteries requires precisely directed flow of lithium io...
Multiple lithium-ion transport pathways and local phase changes upon lithiation in silver hollandite...
Comprehensive understanding of the charge transport mechanism in the intrinsic structure of an elect...
In the past decades, Li ion batteries are widely considered to be the most promising rechargeable ba...
Comprehensive understanding of the charge transport mechanism in the intrinsic structure of an elect...
Comprehensive understanding of the charge transport mechanism in the intrinsic structure of an elect...
The intercalation of lithium into the polymorph of titania, TiO2-B, has been examined using firstpri...
The conversion reaction of lithia can push up the capacity limit of tin oxide-based anodes. However,...
The rapid insertion and extraction of Li ions from a cathode material is imperative for the function...